SGMSH-20ACA2E Original Yaskawa Super high power motor SGMSH-20ACA2E
Introducing the Yaskawa SGMSH-20ACA2E Servo Motor
The Yaskawa SGMSH-20ACA2E is a cutting-edge solution for industries that demand precision, reliability, and superior performance in their automation systems. Designed with a focus on high power and efficiency, this servo motor is engineered to meet the rigorous demands of modern applications. The integration of advanced technology with user-friendly features makes it an ideal choice for engineers and technicians seeking to optimize their operations.
Product Specifications
Feature | Details |
---|---|
Brand | Yaskawa |
Model | SGMSH-20ACA2E |
Type | Super High Power Motor |
Rated Speed | 3000 r/min |
Power | 2.0 kW |
Power Supply Voltage | Three Phase AC 200V |
Serial Encoder | 17 Bit Relative Value |
Design Sequence | A |
Shaft End | Straight Shaft without Key |
Optional Features | With Oil Seal, DC24V Brake |
Cutting-Edge Features
This servo motor falls within the Ultra High Power Response series, boasting small inertia and high torque for optimal performance. The Yaskawa SGMSH-20ACA2E features online automatic adjustment capabilities, enabling rapid and precise measurement of mechanical properties. Users can quickly set the required servo gain, ensuring operational excellence even from initial contact.
Advanced Technology Integration
With an automatic identification system, the motor and servo drive work seamlessly together to recognize power specifications and set motor parameters without hassle. The connection terminals for regenerative resistance offer convenient integration possibilities, reinforcing the design’s efficiency and modularity.
Performance Comparisons
This model is optimized over previous iterations, achieving faster CPU computing times and significantly enhanced positioning speeds. The SGMSH series allows for improved mechanical property performance, maximizing production efficiency while minimizing maintenance efforts. Overall, the Yaskawa SGMSH-20ACA2E stands out as a versatile and robust choice for contemporary automated systems.